Dense Spin Arrays with Low Cross-talk Operations for Quantum Network Applications
Name
Wang_hanfengw_SM_EECS_2022_thesis_v2.pdf
Description
Thesis PDF
Size
3.51 MB
Format
Adobe PDF
Checksum (MD5)
977807354c89b339004a0618c27d53a7
Author(s)
Wang, Hanfeng
Advisor(s)
Englund, Dirk Robert
Date Issued
September 2022
Publisher
Massachusetts Institute of Technology
Abstract
In this master thesis, we propose a quantum repeater architecture based on a spin array with an efficient optical interface. Single qubit control and multi-qubit gates can be realized by localized electric field with low cross-talk and power consumption. This thesis will also contain how we use electric field to make use of spectral addressing and frequency-multiplexing to increase the quantum repeater performance. We evaluate the performance of the our design in comparison to a routing tree design and show an increased entanglement generation rate scaling into the thousands of qubits regime. Our results enable high fidelity control of dense quantum emitter arrays for scalable networking.
MIT Department
Massachusetts Institute of Technology. Department of Electrical Engineering and Computer Science
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